peo包覆镁合金复合层的耐蚀耐磨性能研究进展

IF 0.8 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
M. Madhu, S. Manivannan, D. Sreekanth, P Sajeesh
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引用次数: 0

摘要

镁合金由于其低密度、优越的阻尼能力、令人印象深刻的强度重量比和可回收性,在科学界引起了极大的关注。具有生物相容性的镁合金吸引了研究人员将其作为人体永久植入物。但镁合金在电动势系列中位置较低,对腐蚀有很高的亲和力,在腐蚀性阴离子存在下会降解。可以采用表面改性的方法来保护镁表面免受腐蚀环境的影响。在各种表面处理工艺中,等离子体电解氧化(PEO)工艺是一种环保的工艺,可以在镁合金上提供坚固的防腐耐磨涂层。PEO表面气孔和裂纹的存在降低了合金的耐蚀性和耐磨性。不同的复合涂层可以改善peo涂层Mg表面的形貌、腐蚀和磨损特性。本文对Mg - PEO复合涂层在腐蚀环境下的缓蚀机理、磨损特性、润湿特性、生物功能以及降解进行了阐述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Corrosion and Wear Enhancement of Composite Layers over PEO-Coated Mg Alloys: A Review

Corrosion and Wear Enhancement of Composite Layers over PEO-Coated Mg Alloys: A Review

Magnesium alloys have garnered significant gained attention in the scientific community due to their low density, superior damping capacity, impressive strength-to-weight ratio, and recyclability. The biocompatible Mg alloys attracted the researchers to use them as permanent implants in the body. But Mg alloys were positioned low in the electromotive series, have a high affinity for corrosion, and will be degraded in the presence of corrosive anions. Surface modification methods could be adopted to protect the Mg surface from corrosive environments. Among various surface treatment processes, plasma electrolytic oxidation (PEO) process is environmentally friendly for providing a robust anti-corrosion and wear-resistant coating on the Mg alloys. Presence of the pores and cracks on the PEO surfaces reduced the corrosion and wear resistance of the alloys. Surface morphology, corrosion and wear characteristics of the PEO-coated Mg surfaces can be improved by various composite coatings. The mechanisms of corrosion inhibition, wear characteristics, wetting characteristics, biofunctionality and finally the degradation of various composite coatings over Mg‑PEO surfaces in the presence of corrosive environments are elaborated in this review paper.

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来源期刊
CiteScore
1.90
自引率
18.20%
发文量
90
审稿时长
4-8 weeks
期刊介绍: Protection of Metals and Physical Chemistry of Surfaces is an international peer reviewed journal that publishes articles covering all aspects of the physical chemistry of materials and interfaces in various environments. The journal covers all related problems of modern physical chemistry and materials science, including: physicochemical processes at interfaces; adsorption phenomena; complexing from molecular and supramolecular structures at the interfaces to new substances, materials and coatings; nanoscale and nanostructured materials and coatings, composed and dispersed materials; physicochemical problems of corrosion, degradation and protection; investigation methods for surface and interface systems, processes, structures, materials and coatings. No principe restrictions exist related systems, types of processes, methods of control and study. The journal welcomes conceptual, theoretical, experimental, methodological, instrumental, environmental, and all other possible studies.
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